DOI QR코드

DOI QR Code

광 위상 공액기의 최적 파라미터 값 도출을 통한 0.96 Tbps WDM 신호의 BER 개선

BER Improvements of 0.96 Tbps WDM Signals through Optimal Parameter Values of Optical Phase Conjugator

  • 투고 : 2015.02.04
  • 심사 : 2015.03.03
  • 발행 : 2015.03.30

초록

In this paper, it is investigated that the limitation due to the asymmetry of optical power and chromatic dispersion with respect to optical phase conjugator (OPC) for compensating optical signal distortion in WDM system is overcomed by using OPC position offset and optimal dispersion coefficients of fiber sections, which depend on OPC position offset. It is confirmed that overall WDM channels are efficiently compensated by applying the optimal parameter values obtained from the proposed method into 24 channels ${\times}40$ Gbps WDM system with non zero - dispersion shifted fiber (NZ-DSF) of 1, 000 km, such as power penalties of inter-channel are reduce to almost 3.5 dB from the infinite value. It is also confirmed that the flexible design of WDM system with OPC is possible by using the optimal parameters, in which OPC is placed at ${\pm}15km$ from 500 km for efficiently compensating overall channels. Thus, the methods proposed in this research will be expected to alternate with the method of making a symmetrical distribution of power and local dispersion in real optical link which generates a serious problem if it was not made but it is the condition in the case of applying the OPC into multi-channels WDM system.

키워드

참고문헌

  1. N. Shibata, K. Nosu, K. Iwashita, and Y. Azuma, "Transmission limitations due to fiber nonlinearities in optical FDM systems," IEEE J Select. Areas in Comm., vol. 8, no. 6, 1990, pp. 1068-1077. https://doi.org/10.1109/49.57810
  2. A. F. Elrefaie, R. E. Wagner, D. A. Atlas, and D. G. Daut, "Chromatic dispersion limitations in coherent optical fiber transmission systems," Electron. Lett., vol. 23, 1987, pp. 756-758. https://doi.org/10.1049/el:19870536
  3. T. L. Koch Alferness, "Dispersion compensation by active predistorted signal synthesis," J. Lightwave Technol., vol. LT-3, 1985, pp. 800-805.
  4. A. H. Gnauck et al., "8-Gb/s-130 km transmission experiment using Er-doped fiber preamplifier and optical dispersion equalization," IEEE Photon. Technol. Lett., vol. 3, 1991, pp 1147-1149. https://doi.org/10.1109/68.118036
  5. N. Takachio, K. Iwashita, K. Nakanishi, and S. Koike, "Chromatic dispersion equalization in an 8 Gbit/s 202 km optical CPFSK transmission experiment," in Proc. IOOC '89, Kobe. Japan, Paper 20PDA-13, 1989.
  6. A. M. Vengsarkar and W. A. Reed, "Dispersion-compensating single-mode fibers : Efficient designs for first- and second-order compensation," Opt. Lett., vol. 18, 1993., pp. 924-926. https://doi.org/10.1364/OL.18.000924
  7. A. Yariv, D. Fekete, and D. M. Pepper, "Compensation for channel dispersion by nonlinear optical phase conjugation," Opt. Lett., vol. 4, 1979, pp.52-54. https://doi.org/10.1364/OL.4.000052
  8. D. M. Pepper and A. Yariv, "Compensation for phase distortions in nonlinear media by phase conjugation," Opt. Lett., vol. 5, 1979, pp.59-60.
  9. S. Watanabe, S. Takeda, G. Ishikawa, H. Ooi, J. G. Nielsen and C. Sonne, "Simultaneous wavelength conversion and optical phase conjugation of 200 Gb/s ($5{\times}40$ Gb/s) WDM Signal using a highly nonlinear fiber four-wave mixing," ECOC 97 Conf., 1997, pp.1-4.
  10. 이성렬, "비영 분산 천이 광섬유를 갖는 WDM 시스템에서 광 위상 공액기에 의한 왜곡된 광 신호의 보상," 한국전자파학회논문지, 제 17권 6호, 2006, pp.546-555.
  11. G. P. Agrawal, Nonlinear Fiber Optics, Academic Press, 2001.
  12. 이성렬, 김지웅, 손성찬, "320 Gbps 강도 변조 직접 검파 WDM 채널 보상에서 상호 위상 변조의 영향," 한국해양정보통신학회논문지, 제 8권, 6호, 2004, pp. 1134-1140.
  13. M. Wu and W. I. way, "Fiber nonlinearity limitations in ultra-dense WDM systems," J. Lightwave Technol., vol. 22, no. 6, 2004, pp. 1483-1498. https://doi.org/10.1109/JLT.2004.829222
  14. ITU Recommendation "Spectral grids for WDM applications : DWDM frequency grid," G.694.1,2006.
  15. G. P. Agrawal, Fiber-optic communication systems, John Wiley & Sons, Inc., 2002.
  16. S. Watanabe and M. Shirasaki, "Exact compensation for both chromatic dispersion and Kerr effect in a transmission fiber using optical phase conjugation," J. Lightwave Technol., vol. 14, no. 3, 1996, pp. 243-248. https://doi.org/10.1109/50.485581